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Meeda, Y, Harrison, EL, Monier, A, Wheeler, G and Helliwell, KE 2024 Crossed wires: diatom phosphate sensing mechanisms coordinate nitrogen metabolism. Plant Signaling & Behaviour, 19 (1), 2404352. https://doi.org/10.1080/15592324.2024.2404352
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Murphy, EA, Kleiner, FH, Helliwell, KE and Wheeler, G 2024 Channels of evolution: unveiling evolutionary patterns in diatom Ca2+ signalling [in special issue: Molecular Signaling Events in Algae in Response to Abiotic Factors and Biotic Interactions] Plants, 13 (9). https://doi.org/10.3390/plants13091207
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de Vries, J, Monteiro, FM, Langer, G, Brownlee, C and Wheeler, G 2024 A critical trade-off between nitrogen quota and growth allows Coccolithus braarudii life cycle phases to exploit varying environment. Biogeosciences, 21 (7). 1707-1727. https://doi.org/10.5194/bg-21-1707-2024
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Smirnoff, N and Wheeler, G 2024 The ascorbate biosynthesis pathway in plants is known, but there is a way to go with understanding control and functions. Journal of Experimental Botany, erad505. 27, pp. https://doi.org/10.1093/jxb/erad505
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Keys, M, Hopkinson, B, Highfield, A, Chrachri, A, Brownlee, C and Wheeler, G 2023 The requirement for external carbonic anhydrase in diatoms is influenced by the supply and demand for dissolved inorganic carbon. Journal of Phycology. https://doi.org/10.1111/jpy.13416
Sturm, D, de Vries, J, Balch, WM, Wheeler, G and Brownlee, C 2023 Mesoscale oceanographic meanders influence protist community function and structure in the southern Indian Ocean. Environmental Microbiology. https://doi.org/10.1111/1462-2920.16500
Brownlee, C and Wheeler, G 2023 Spatiotemporal cytosolic Ca2+ signals in plants and algae: divergent means to an end. Bioelectricity, 5 (1). https://doi.org/10.1089/bioe.2023.0004
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Brownlee, C, Wheeler, G, Ratcliffe, S, Meyer, EM, Walker, CE, Knight, M, McNair, HM, Matson, PG, Iglesias-Rodriguez, D and Langer, G 2023 Characterization of the molecular mechanisms of silicon uptake in coccolithophores. Environmental Microbiology, 25 (2). 315-330. https://doi.org/10.1111/1462-2920.16280
Brownlee, C, Helliwell, KE, Meeda, Y, McLachlan, D, Murphy, EA and Wheeler, G 2023 Regulation and integration of membrane transport in marine diatoms [in special issue: Algal model organisms by Susana Coelho and Olivier de Clerck] Seminars in cell & developmental biology, 134. 79-89. https://doi.org/10.1016/j.semcdb.2022.03.006
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Langer, G, Probert, I, Cox, MB, Taylor, A, Harper, GM, Brownlee, C and Wheeler, G 2022 The effect of cytoskeleton inhibitors on coccolith morphology in Coccolithus braarudii and Scyphosphaera apsteinii. Journal of Phycology.
Knight, M, Hardy, BJ, Wheeler, G and Curnow, P 2022 Computational modelling of diatom silicic acid transporters predicts a conserved fold with implications for their function and evolution. Biochimica et Biophysica Acta (BBA) - Biomembranes, 1865 (1). https://doi.org/10.1016/j.bbamem.2022.184056
Sturm, D, Langer, G and Wheeler, G 2022 Novel combination coccospheres from Helicosphaera spp indicate complex relationships between species. Journal of Plankton Research, fbac044. https://doi.org/10.1093/plankt/fbac044
Kottmeier, DM, Chrachri, A, Langer, G, Helliwell, KE, Wheeler, G and Brownlee, C 2022 Reduced H+ channel activity disrupts pH homeostasis and calcification in coccolithophores at low ocean pH. Environmental Sciences, 119 (19), e211800911. 11, pp. https://doi.org/10.1073/pnas.2118009119
Langer, G, Jie, VW, Kottmeier, D, Flori, S, Sturm, D, de Vries, J, Harper, GM, Brownlee, C and Wheeler, G 2022 Distinct physiological responses of Coccolithus braarudii life cycle phases to light intensity and nutrient availability. European Journal of Phycology. https://doi.org/10.1080/09670262.2022.2056925
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Wheeler, G, Taylor, AR and Brownlee, C 2021 CELLULAR MECHANISMS UNDERLYING THE RESPONSE OF COCCOLITHOPHORES TO FUTURE CHANGES IN OCEAN CARBONATE CHEMISTRY. Phycologia, 60. 56.
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Sturm, D, Wheeler, G, Brownlee, C and Tyrrell, T 2021 EXAMINING THE PHYSIOLOGY AND BIOGEOGRAPHY OF COCCOLITHOPHORE LIFE CYCLE STAGES. Phycologia, 60. 83.
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Laundon, D, Mock, T, Wheeler, G and Cunliffe, M 2021 Healthy herds in the phytoplankton: the benefit of selective parasitism. International Society for Microbial Ecology, 15. 2163-2166. https://doi.org/10.1038/s41396-021-00936-8
Helliwell, KE, Kleiner, FH, Hardstaff, Hayley, Chrachri, A, Gaikwad, T, Salmon, D, Smirnoff, N, Wheeler, G and Brownlee, C 2021 Spatiotemporal patterns of intracellular Ca2+ signalling govern hypo-osmotic stress resilience in marine diatoms. New Phytologist, 230 (1). 155-170. https://doi.org/10.1111/nph.17162
Langer, G, Taylor, AR, Walker, CE, Meyer, EM, Joseph, OB, Gal, A, Harper, GM, Probert, I, Brownlee, C and Wheeler, G 2021 Role of silicon in the development of complex crystal shapes in coccolithophores. New Phytologist, 231 (5). 1845-1857. https://doi.org/10.1111/nph.17230
Kottmeier, D, Chrachri, A, Langer, G, Wheeler, G and Brownlee, C 2020 Differences in acid-base regulation of haploid and diploid life-cycle stages of Coccolithus braarudii and their consequences for the sensitivity towards ocean acidification. Access Microbiology, 2 (7A). https://doi.org/10.1099/acmi.ac2020.po0749
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Laundon, D, Chrismas, N, Wheeler, G and Cunliffe, M 2020 Chytrid rhizoid morphogenesis resembles hyphal development in multicellular fungi and is adaptive to resource availability. Proceedings of the Royal Society B: Biological Sciences, 287 (1928). https://doi.org/10.1098/rspb.2020.0433
Highfield, A, Stern, R, Wheeler, G, Dupont, CL, Edgcomb, V, Einarsson, E, Elustondo, PA, Federici, F, Freire-Beneitez, V and Freyria et al, NJ 2020 Genetic tool development in marine protists: emerging model organisms for experimental cell biology. Nature Methods, 17. 481-494. https://doi.org/10.1038/s41592-020-0796-x
Fort, C, Collingridge, P, Brownlee, C and Wheeler, G 2020 Ca2+ elevations disrupt interactions between intraflagellar transport and the flagella membrane in Chlamydomonas. Journal of Cell Science, 134 (3). https://doi.org/10.1242/jcs.253492
Wheeler, G, Helliwell, KE and Brownlee, C 2018 Calcium signalling in algae. Perspectives in Phycology. https://doi.org/10.1127/pip/2018/0082
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Chrachri, A, Hopkinson, BM, Flynn, KJ, Brownlee, C and Wheeler, G 2018 Dynamic changes in carbonate chemistry in the microenvironment around single marine phytoplankton cells. Nature Communications, 9 (1). https://doi.org/10.1038/s41467-017-02426-y
Durak, GM, Brownlee, C and Wheeler, G 2017 The role of the cytoskeleton in biomineralisation in haptophyte algae. Scientific Reports, 7 (1). https://doi.org/10.1038/s41598-017-15562-8
Brawley, SH, Blouin, NA, Ficko-Blean, E, Wheeler, G, Lohr, M, Goodson, HV, Jenkins, JW, Blaby-Haas, CE, Helliwell, KE, Chan, CX, Marriage, TN, Bhattacharya, D, Klein, AS, Badis, Y, Brodie, J, Cao, YM, Collen, J, Dittami, SM, Gachon, CMM, Green, BR, Karpowicz, SJ, Kim, JW, Kudahl, UJ, Lin, S, Michel, G, Mittag, M, Olson, BJSC, Pangilinan, JL, Peng, Y, Qiu, H, Shumway, SE, Singer, JT, Smith, AG, Sprecher, BN, Wagner, V, Wang, W, Wang, ZY, Yan, J, Yarish, C, Zäuner-Riek, S, Zhuang, Y, Zou, Y, Lindquist, EA, Grimwood, J, Barry, KW, Rokhsar, DS, Schmutz, J, Stiller, JW, Grossman, AR and Prochnik, SE 2017 Insights into the red algae and eukaryotic evolution from the genome ofPorphyra umbilicalis(Bangiophyceae, Rhodophyta). Proceedings of the National Academy of Sciences, 114 (31). E6361-E6370. https://doi.org/10.1073/pnas.1703088114
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Wheeler, G 2017 Calcium-dependent signalling mechanisms in the Porphyra genome. Phycologia, 56 (4), supplement S. 196. https://doi.org/10.2216/0031-8884-56.sp4.1
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Wheeler, G and Zaeuner-Riek, S 2017 New insights into lipid metabolism and signaling in the red alga Porphyra Umbilicalis. Phycologia, 56 (4), supplement S. 206. https://doi.org/10.2216/0031-8884-56.sp4.1
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Taylor, AR, Brownlee, C and Wheeler, G 2016 Coccolithophore Cell Biology: Chalking Up Progress. Annual Review of Marine Science, 9 (1). 283-310. https://doi.org/10.1146/annurev-marine-122414-034032
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Taylor, AR, Brownlee, C and Wheeler, G 2016 Coccolithophore Cell Biology: Chalking Up Progress. Annual Review of Marine Science, 9 (1). 283-310. https://doi.org/10.1146/annurev-marine-122414-034032
Flynn, KJ, Clark, DR and Wheeler, G 2016 The role of coccolithophore calcification in bioengineering their environment.. Proceedings. Biological sciences / The Royal Society, 283 (1833). https://doi.org/10.1098/rspb.2016.1099
Durak, GM, Taylor, AR, Walker, CE, Probert, I, de Vargas, C, Audic, S, Schroeder, DC, Brownlee, C and Wheeler, G 2016 A role for diatom-like silicon transporters in calcifying coccolithophores.. Nature communications, 7. 10543. https://doi.org/10.1038/ncomms10543
Brownlee, C, Wheeler, G and Taylor, AR 2015 Coccolithophore biomineralization: New questions, new answers.. Seminars in cell & developmental biology, 46. 11-6. https://doi.org/10.1016/j.semcdb.2015.10.027
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Wheeler, G, Ishikawa, T, Pornsaksit, V and Smirnoff, N 2015 Evolution of alternative biosynthetic pathways for vitamin C following plastid acquisition in photosynthetic eukaryotes.. eLife, 4. https://doi.org/10.7554/eLife.06369
Helliwell, KE, Wheeler, G and Smith, AG 2013 Widespread decay of vitamin-related pathways: coincidence or consequence?. Trends in Genetics, 29 (8). 469 - 478. https://doi.org/10.1016/j.tig.2013.03.003
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Bach, L, Mackinder, L, Schulz, K, Wheeler, G, Schroeder, DC, Brownlee, C and Riebesell, U 2013 Dissecting the impact of CO2 and pH on the mechanisms of photosynthesis and calcification in the coccolithophore Emiliania huxleyi. New Phytologist, 199 (1). 121 - 134. https://doi.org/10.1111/nph.12225
Read, B, Kegel, J, Klute, M, Kuo, A, Lefebvre, SC, Maumus, F, Mayer, C, Miller, J, Monier, A, Salamov, A, Young, J, Aguilar, M, Claverie, J-M, Frickenhaus, S, Gonzalez, K, Herman, EK, Lin, Y-C, Napier, JA, Ogata, H, Sarno, AF, Shmutz, J, Schroeder, DC, de Vargas, C, Verret, F, Von Dassow, P, Valentin, K, Van de Peer, Y, Wheeler, G, Delwiche, CF, Dacks, JB, Dyhrman, ST, Glockner, FO, John, U, Richards, T, Worden, AZ, Zhang, XL and Grigoriev, IV 2013 Pan genome of the phytoplankton Emiliania underpins its global distribution. Nature, 499 (7457). 209 - 213. https://doi.org/10.1038/nature12221
Taylor, AR, Brownlee, C and Wheeler, G 2012 Proton channels in algae: reasons to be excited. Trends in Plant Science, 17. 675 - 684. https://doi.org/10.1016/j.tplants.2012.06.009
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Flynn, KJ, Blackford, JC, Baird, ME, Raven, J, Clark, DR, Beardall, J, Brownlee, C, Fabian, H and Wheeler, G 2012 Changes in pH at the exterior surface of plankton with ocean acidification. Nature Climate Change, 2. 510 - 513. https://doi.org/10.1038/nclimate1489
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Chan, CX, Zaeuner, S, Wheeler, G, Grossman, AR, Prochnik, SE, Blouin, NA, Zhuang, Y, Benning, C, Berg, GM, Yarish, C, Eriksen, RL, Klein, AS, Lin, S, Levine, I, Brawley, SH and Bhattacharya, D 2012 Analysis of Porphyra Membrane Transporters Demonstrates Gene Transfer among Photosynthetic Eukaryotes and Numerous Sodium-Coupled Transport Systems. Plant Physiology, 158. 2001 - 2012. https://doi.org/10.1104/pp.112.193896
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Helliwell, KE, Wheeler, G, Leptos, KC, Goldstein, R and Smith, AG 2011 Insights into the Evolution of Vitamin B-12 Auxotrophy from Sequenced Algal Genomes. Molecular Biology and Evolution, 28(10). 2921 - 2933. https://doi.org/10.1093/molbev/msr124
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Crawfurd, KJ, Raven, J, Wheeler, G, Baxter, E and Joint, IR 2011 The response of Thalassiosira pseudonana to long-term exposure to increased CO2 and decreased pH. PLoS one. 26695 - 26695. https://doi.org/10.1371/journal.pone.0026695
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Mackinder, L, Wheeler, G, Schroeder, DC, Von Dassow, P, Riebesell, U and Brownlee, C 2011 Expression of biomineralization-related ion transport genes in Emiliania huxleyi. Environmental Microbiology, 13(12). 3250 - 3265. https://doi.org/10.1111/j.1462-2920.2011.02561.x
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Brownlee, C, Taylor, A, Wheeler, G and Chrachri, A 2011 Ion Channels Signalling and Cellular Function in Algae: Clues on the Origins of Excitability in Eukaryotes. European Journal of Phycology, 46. 31 - 31.
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Salmon, D, Smirnoff, N, Wheeler, G and Brownlee, C 2011 Metabolite Profiling Indicates Intraspecific Variability in the Accumulation of Compatible Solutes in the Haptophyte Alga Emiliania Huxleyi. European Journal of Phycology, 46. 154 - 155.
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Taylor, AR, Chrachri, A, Wheeler, G, Goddard, H and Brownlee, C 2011 A voltage-gated H+ channel underlying pH homeostasis in calcifying coccolithophores. PLoS Biology, 6. 01-Jan. https://doi.org/10.1371/journal.pbio.1001085
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Taylor, AR, Chrachri, A, Wheeler, G, Goddard, H and Brownlee, C 2011 Proton Conductance in Coccolithophores Is an Integral Component of Ph Homeostasis During Calcification. Journal of Phycology, 47. 27 - 27.
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Mackinder, L, Wheeler, G, Schroeder, DC, Riebesell, U and Brownlee, C 2010 Molecular Mechanisms Underlying Calcification in Coccolithophores. Geomicrobiology Journal, 27. 585 - 595. https://doi.org/10.1080/01490451003703014
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Verret, F, Wheeler, G, Taylor, AR, Farhham, G and Brownlee, C 2010 Calcium channels in photosynthetic eukaryotes: implications for evolution of calcium-based signalling. New Phytologist, 187. 23 - 43. https://doi.org/10.1111/j.1469-8137.2010.03271.x
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Wheeler, G and Brownlee, C 2008 Ca2+ signalling in plants and green algae - changing channels. Trends in Plant Science, 13. 506 - 514. https://doi.org/10.1016/j.tplants.2008.06.004
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Wheeler, G, Miranda-Saavedra, D and Barton, GJ 2008 Genome analysis of the unicellular green alga Chlamydomonas reinhardtii indicates an ancient evolutionary origin for key pattern recognition and cell-signaling protein families. Genetics, 1. 193 - 197. https://doi.org/10.1534/genetics.107.085936
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Wheeler, G, Joint, IR and Brownlee, C 2008 Rapid spatiotemporal patterning of cytosolic Ca2+ underlies flagellar excision in Chlamydomonas reinhardtii. Plant Journal, 53. 401 - 413. https://doi.org/10.1111/j.1365-313X.2007.03349.x
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Joint, IR, Tait, K and Wheeler, G 2007 Cross-kingdom signalling: exploitation of bacterial quorum sensing molecules by the green seaweed Ulva. Philosophical Transactions of the Royal Society of London Series B-Biological Sciences, 362. 1223 - 1233. https://doi.org/10.1098/rstb.2007.2047
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Bothwell, JHF, Brownlee, C, Hetherington, AM, Ng, CK, Wheeler, G and McAinsh, MR 2006 Biolistic delivery of Ca2+ dyes into plant and algal cells. Plant Journal, 46(2). 327 - 335. https://doi.org/10.1111/j.1365-313X.2006.02687.x
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Thompson, SEM, Callow, JA, Callow, ME, Wheeler, G, Taylor, AR and Brownlee, C 2007 Membrane Recycling And Calcium Dynamics During Settlement And Adhesion Of Zoospores Of The Green Alga Ulva Linza. UNSPECIFIED, 733 - 744.
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Wheeler, G, Tait, K, Taylor, AR, Brownlee, C and Joint, IR 2006 Acyl-homoserine lactones modulate the settlement rate of zoospores of the marine alga Ulva intestinalis via a novel chemokinetic mechanism. UNSPECIFIED, 608 - 618.
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Brownlee, C, Chrachri, A, Taylor, AR, Balestreri, C, Krueger-Hadfield, S and Wheeler, G 2013 Understanding the Mechanisms of Cell and Population Responses of Coccolithophores to Changing Ocean Chemistry. In: UNSPECIFIED. 14.
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